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Towards a realistic microscopic description of highway traffic
Journal of Physics A Mathematical and General · 2000 · Vol. 33(48) · pp. L477–L485
W Knospe✉L SantenA Schadschneider(University of Cologne)M Schreckenberg
Abstract
Simple cellular automata models are able to reproduce the basic properties of highway traffic. The comparison with empirical data for microscopic quantities requires a more detailed description of the elementary dynamics. Based on existing cellular automata models we propose an improved discrete model incorporating anticipation effects, reduced acceleration capabilities and an enhanced interaction horizon for braking. The modified model is able to reproduce the three phases (free-flow, synchronized, and stop-and-go) observed in real traffic. Furthermore we find a good agreement with detailed empirical single-vehicle data in all phases.
Traffic control and managementVehicular Ad Hoc Networks (VANETs)Evacuation and Crowd DynamicsCellular automatonAccelerationSimple (philosophy)Anticipation (artificial intelligence)AutomatonHorizonMathematical model
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345
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28.75
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Cited by
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References
Dynamical model of traffic congestion and numerical simulation
Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics · 1995 · 2,961 citations
Statistical physics of vehicular traffic and some related systems
Physics Reports · 2000 · 2,232 citations
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